TSTP Solution File: GEO606+1 by Twee---2.4.2

View Problem - Process Solution

%------------------------------------------------------------------------------
% File     : Twee---2.4.2
% Problem  : GEO606+1 : TPTP v8.1.2. Released v7.5.0.
% Transfm  : none
% Format   : tptp:raw
% Command  : parallel-twee %s --tstp --conditional-encoding if --smaller --drop-non-horn --give-up-on-saturation --explain-encoding --formal-proof

% Computer : n001.cluster.edu
% Model    : x86_64 x86_64
% CPU      : Intel(R) Xeon(R) CPU E5-2620 v4 2.10GHz
% Memory   : 8042.1875MB
% OS       : Linux 3.10.0-693.el7.x86_64
% CPULimit : 300s
% WCLimit  : 300s
% DateTime : Wed Aug 30 23:29:31 EDT 2023

% Result   : Theorem 12.42s 1.97s
% Output   : Proof 13.09s
% Verified : 
% SZS Type : -

% Comments : 
%------------------------------------------------------------------------------
%----WARNING: Could not form TPTP format derivation
%------------------------------------------------------------------------------
%----ORIGINAL SYSTEM OUTPUT
% 0.00/0.13  % Problem  : GEO606+1 : TPTP v8.1.2. Released v7.5.0.
% 0.00/0.14  % Command  : parallel-twee %s --tstp --conditional-encoding if --smaller --drop-non-horn --give-up-on-saturation --explain-encoding --formal-proof
% 0.14/0.35  % Computer : n001.cluster.edu
% 0.14/0.35  % Model    : x86_64 x86_64
% 0.14/0.35  % CPU      : Intel(R) Xeon(R) CPU E5-2620 v4 @ 2.10GHz
% 0.14/0.35  % Memory   : 8042.1875MB
% 0.14/0.35  % OS       : Linux 3.10.0-693.el7.x86_64
% 0.14/0.35  % CPULimit : 300
% 0.14/0.35  % WCLimit  : 300
% 0.14/0.35  % DateTime : Tue Aug 29 22:02:08 EDT 2023
% 0.14/0.35  % CPUTime  : 
% 12.42/1.97  Command-line arguments: --no-flatten-goal
% 12.42/1.97  
% 12.42/1.97  % SZS status Theorem
% 12.42/1.97  
% 12.42/2.01  % SZS output start Proof
% 12.42/2.01  Take the following subset of the input axioms:
% 12.42/2.01    fof(exemplo6GDDFULL618068, conjecture, ![A, B, D, E, F, P, G, I, NWPNT1, NWPNT2, NWPNT3, NWPNT4, NWPNT5, NWPNT6, NWPNT7, NWPNT8, NWPNT9, NWPNT01]: ((perp(P, A, P, B) & (circle(A, P, NWPNT1, NWPNT2) & (circle(B, P, NWPNT3, NWPNT4) & (circle(A, P, D, NWPNT5) & (circle(A, D, E, NWPNT6) & (coll(E, D, A) & (circle(A, P, I, NWPNT7) & (circle(B, P, I, NWPNT8) & (coll(F, D, I) & (circle(B, P, F, NWPNT9) & (circle(B, F, G, NWPNT01) & coll(G, F, B)))))))))))) => perp(G, F, D, E))).
% 12.42/2.01    fof(ruleD1, axiom, ![C, A2, B2]: (coll(A2, B2, C) => coll(A2, C, B2))).
% 12.42/2.01    fof(ruleD10, axiom, ![B2, C2, D2, E2, F2, A2_2]: ((para(A2_2, B2, C2, D2) & perp(C2, D2, E2, F2)) => perp(A2_2, B2, E2, F2))).
% 12.42/2.01    fof(ruleD17, axiom, ![B2, C2, D2, E2, A2_2]: ((cyclic(A2_2, B2, C2, D2) & cyclic(A2_2, B2, C2, E2)) => cyclic(B2, C2, D2, E2))).
% 12.42/2.01    fof(ruleD19, axiom, ![Q, U, V, B2, C2, D2, A2_2, P2]: (eqangle(A2_2, B2, C2, D2, P2, Q, U, V) => eqangle(C2, D2, A2_2, B2, U, V, P2, Q))).
% 12.42/2.01    fof(ruleD2, axiom, ![B2, C2, A2_2]: (coll(A2_2, B2, C2) => coll(B2, A2_2, C2))).
% 12.42/2.01    fof(ruleD21, axiom, ![B2, C2, D2, A2_2, P2, Q2, U2, V2]: (eqangle(A2_2, B2, C2, D2, P2, Q2, U2, V2) => eqangle(A2_2, B2, P2, Q2, C2, D2, U2, V2))).
% 12.42/2.01    fof(ruleD3, axiom, ![B2, C2, D2, A2_2]: ((coll(A2_2, B2, C2) & coll(A2_2, B2, D2)) => coll(C2, D2, A2_2))).
% 12.42/2.01    fof(ruleD39, axiom, ![B2, C2, D2, A2_2, P2, Q2]: (eqangle(A2_2, B2, P2, Q2, C2, D2, P2, Q2) => para(A2_2, B2, C2, D2))).
% 12.42/2.01    fof(ruleD40, axiom, ![B2, C2, D2, A2_2, P2, Q2]: (para(A2_2, B2, C2, D2) => eqangle(A2_2, B2, P2, Q2, C2, D2, P2, Q2))).
% 12.42/2.01    fof(ruleD41, axiom, ![B2, A2_2, P2, Q2]: (cyclic(A2_2, B2, P2, Q2) => eqangle(P2, A2_2, P2, B2, Q2, A2_2, Q2, B2))).
% 12.42/2.01    fof(ruleD42b, axiom, ![B2, A2_2, P2, Q2]: ((eqangle(P2, A2_2, P2, B2, Q2, A2_2, Q2, B2) & coll(P2, Q2, B2)) => cyclic(A2_2, B2, P2, Q2))).
% 12.42/2.01    fof(ruleD43, axiom, ![R, B2, C2, A2_2, P2, Q2]: ((cyclic(A2_2, B2, C2, P2) & (cyclic(A2_2, B2, C2, Q2) & (cyclic(A2_2, B2, C2, R) & eqangle(C2, A2_2, C2, B2, R, P2, R, Q2)))) => cong(A2_2, B2, P2, Q2))).
% 12.42/2.01    fof(ruleD45, axiom, ![B2, C2, E2, F2, A2_2]: ((midp(E2, A2_2, B2) & (para(E2, F2, B2, C2) & coll(F2, A2_2, C2))) => midp(F2, A2_2, C2))).
% 12.42/2.01    fof(ruleD51, axiom, ![M, O, B2, C2, A2_2]: ((circle(O, A2_2, B2, C2) & (coll(M, B2, C2) & eqangle(A2_2, B2, A2_2, C2, O, B2, O, M))) => midp(M, B2, C2))).
% 12.42/2.01    fof(ruleD56, axiom, ![B2, A2_2, P2, Q2]: ((cong(A2_2, P2, B2, P2) & cong(A2_2, Q2, B2, Q2)) => perp(A2_2, B2, P2, Q2))).
% 12.42/2.01    fof(ruleD57, axiom, ![B2, A2_2, P2, Q2]: ((cong(A2_2, P2, B2, P2) & (cong(A2_2, Q2, B2, Q2) & cyclic(A2_2, B2, P2, Q2))) => perp(P2, A2_2, A2_2, Q2))).
% 12.42/2.01    fof(ruleD66, axiom, ![B2, C2, A2_2]: (para(A2_2, B2, A2_2, C2) => coll(A2_2, B2, C2))).
% 12.42/2.01    fof(ruleD68, axiom, ![B2, C2, A2_2]: (midp(A2_2, B2, C2) => cong(A2_2, B2, A2_2, C2))).
% 12.42/2.01    fof(ruleD7, axiom, ![B2, C2, D2, A2_2]: (perp(A2_2, B2, C2, D2) => perp(A2_2, B2, D2, C2))).
% 12.42/2.01    fof(ruleD8, axiom, ![B2, C2, D2, A2_2]: (perp(A2_2, B2, C2, D2) => perp(C2, D2, A2_2, B2))).
% 12.42/2.01    fof(ruleD9, axiom, ![B2, C2, D2, E2, F2, A2_2]: ((perp(A2_2, B2, C2, D2) & perp(C2, D2, E2, F2)) => para(A2_2, B2, E2, F2))).
% 12.42/2.01  
% 12.42/2.01  Now clausify the problem and encode Horn clauses using encoding 3 of
% 12.42/2.01  http://www.cse.chalmers.se/~nicsma/papers/horn.pdf.
% 12.42/2.01  We repeatedly replace C & s=t => u=v by the two clauses:
% 12.42/2.01    fresh(y, y, x1...xn) = u
% 12.42/2.01    C => fresh(s, t, x1...xn) = v
% 12.42/2.01  where fresh is a fresh function symbol and x1..xn are the free
% 12.42/2.01  variables of u and v.
% 12.42/2.01  A predicate p(X) is encoded as p(X)=true (this is sound, because the
% 12.42/2.01  input problem has no model of domain size 1).
% 12.42/2.01  
% 12.42/2.01  The encoding turns the above axioms into the following unit equations and goals:
% 12.42/2.01  
% 12.42/2.01  Axiom 1 (exemplo6GDDFULL618068_7): circle(b, f, g, nwpnt01) = true.
% 12.42/2.01  Axiom 2 (exemplo6GDDFULL618068_3): perp(p, a, p, b) = true.
% 12.42/2.01  Axiom 3 (ruleD45): fresh181(X, X, Y, Z, W) = true.
% 12.42/2.01  Axiom 4 (ruleD51): fresh179(X, X, Y, Z, W) = true.
% 12.42/2.01  Axiom 5 (ruleD57): fresh177(X, X, Y, Z, W) = true.
% 12.42/2.01  Axiom 6 (ruleD1): fresh146(X, X, Y, Z, W) = true.
% 12.42/2.01  Axiom 7 (ruleD2): fresh133(X, X, Y, Z, W) = true.
% 12.42/2.01  Axiom 8 (ruleD3): fresh119(X, X, Y, Z, W) = true.
% 12.42/2.01  Axiom 9 (ruleD45): fresh98(X, X, Y, Z, W) = midp(W, Y, Z).
% 12.42/2.01  Axiom 10 (ruleD51): fresh89(X, X, Y, Z, W) = midp(W, Y, Z).
% 12.42/2.01  Axiom 11 (ruleD66): fresh66(X, X, Y, Z, W) = true.
% 12.42/2.01  Axiom 12 (ruleD68): fresh63(X, X, Y, Z, W) = true.
% 12.42/2.01  Axiom 13 (ruleD43): fresh185(X, X, Y, Z, W, V) = true.
% 12.42/2.01  Axiom 14 (ruleD10): fresh145(X, X, Y, Z, W, V) = true.
% 12.42/2.01  Axiom 15 (ruleD17): fresh136(X, X, Y, Z, W, V) = true.
% 12.42/2.01  Axiom 16 (ruleD3): fresh120(X, X, Y, Z, W, V) = coll(W, V, Y).
% 12.42/2.01  Axiom 17 (ruleD39): fresh106(X, X, Y, Z, W, V) = true.
% 12.42/2.02  Axiom 18 (ruleD41): fresh103(X, X, Y, Z, W, V) = true.
% 12.42/2.02  Axiom 19 (ruleD42b): fresh102(X, X, Y, Z, W, V) = cyclic(Y, Z, W, V).
% 12.42/2.02  Axiom 20 (ruleD42b): fresh101(X, X, Y, Z, W, V) = true.
% 12.42/2.02  Axiom 21 (ruleD56): fresh80(X, X, Y, Z, W, V) = perp(Y, Z, W, V).
% 12.42/2.02  Axiom 22 (ruleD56): fresh79(X, X, Y, Z, W, V) = true.
% 12.42/2.02  Axiom 23 (ruleD57): fresh78(X, X, Y, Z, W, V) = perp(W, Y, Y, V).
% 12.42/2.02  Axiom 24 (ruleD7): fresh61(X, X, Y, Z, W, V) = true.
% 12.42/2.02  Axiom 25 (ruleD8): fresh52(X, X, Y, Z, W, V) = true.
% 12.42/2.02  Axiom 26 (ruleD9): fresh50(X, X, Y, Z, W, V) = true.
% 12.42/2.02  Axiom 27 (ruleD43): fresh183(X, X, Y, Z, W, V, U) = cong(Y, Z, V, U).
% 12.42/2.02  Axiom 28 (ruleD17): fresh137(X, X, Y, Z, W, V, U) = cyclic(Z, W, V, U).
% 12.42/2.02  Axiom 29 (ruleD45): fresh180(X, X, Y, Z, W, V, U) = fresh181(coll(U, Y, W), true, Y, W, U).
% 12.42/2.02  Axiom 30 (ruleD51): fresh178(X, X, Y, Z, W, V, U) = fresh179(coll(V, Z, W), true, Z, W, V).
% 12.42/2.02  Axiom 31 (ruleD10): fresh147(X, X, Y, Z, W, V, U, T) = perp(Y, Z, U, T).
% 12.42/2.02  Axiom 32 (ruleD1): fresh146(coll(X, Y, Z), true, X, Y, Z) = coll(X, Z, Y).
% 12.42/2.02  Axiom 33 (ruleD2): fresh133(coll(X, Y, Z), true, X, Y, Z) = coll(Y, X, Z).
% 12.42/2.02  Axiom 34 (ruleD40): fresh104(X, X, Y, Z, W, V, U, T) = true.
% 12.42/2.02  Axiom 35 (ruleD68): fresh63(midp(X, Y, Z), true, X, Y, Z) = cong(X, Y, X, Z).
% 12.42/2.02  Axiom 36 (ruleD9): fresh51(X, X, Y, Z, W, V, U, T) = para(Y, Z, U, T).
% 12.42/2.02  Axiom 37 (ruleD57): fresh176(X, X, Y, Z, W, V) = fresh177(cong(Y, W, Z, W), true, Y, W, V).
% 12.42/2.02  Axiom 38 (ruleD3): fresh120(coll(X, Y, Z), true, X, Y, W, Z) = fresh119(coll(X, Y, W), true, X, W, Z).
% 12.42/2.02  Axiom 39 (ruleD66): fresh66(para(X, Y, X, Z), true, X, Y, Z) = coll(X, Y, Z).
% 12.42/2.02  Axiom 40 (ruleD43): fresh184(X, X, Y, Z, W, V, U) = fresh185(cyclic(Y, Z, W, V), true, Y, Z, V, U).
% 12.42/2.02  Axiom 41 (ruleD45): fresh180(midp(X, Y, Z), true, Y, Z, W, X, V) = fresh98(para(X, V, Z, W), true, Y, W, V).
% 12.42/2.02  Axiom 42 (ruleD19): fresh134(X, X, Y, Z, W, V, U, T, S, X2) = true.
% 12.42/2.02  Axiom 43 (ruleD21): fresh131(X, X, Y, Z, W, V, U, T, S, X2) = true.
% 12.42/2.02  Axiom 44 (ruleD41): fresh103(cyclic(X, Y, Z, W), true, X, Y, Z, W) = eqangle(Z, X, Z, Y, W, X, W, Y).
% 12.42/2.02  Axiom 45 (ruleD56): fresh80(cong(X, Y, Z, Y), true, X, Z, W, Y) = fresh79(cong(X, W, Z, W), true, X, Z, W, Y).
% 12.42/2.02  Axiom 46 (ruleD57): fresh176(cyclic(X, Y, Z, W), true, X, Y, Z, W) = fresh78(cong(X, W, Y, W), true, X, Y, Z, W).
% 12.42/2.02  Axiom 47 (ruleD7): fresh61(perp(X, Y, Z, W), true, X, Y, Z, W) = perp(X, Y, W, Z).
% 12.42/2.02  Axiom 48 (ruleD8): fresh52(perp(X, Y, Z, W), true, X, Y, Z, W) = perp(Z, W, X, Y).
% 12.42/2.02  Axiom 49 (ruleD43): fresh182(X, X, Y, Z, W, V, U, T) = fresh183(cyclic(Y, Z, W, U), true, Y, Z, W, V, U).
% 12.42/2.02  Axiom 50 (ruleD17): fresh137(cyclic(X, Y, Z, W), true, X, Y, Z, V, W) = fresh136(cyclic(X, Y, Z, V), true, Y, Z, V, W).
% 12.42/2.02  Axiom 51 (ruleD10): fresh147(perp(X, Y, Z, W), true, V, U, X, Y, Z, W) = fresh145(para(V, U, X, Y), true, V, U, Z, W).
% 12.42/2.02  Axiom 52 (ruleD40): fresh104(para(X, Y, Z, W), true, X, Y, Z, W, V, U) = eqangle(X, Y, V, U, Z, W, V, U).
% 12.42/2.02  Axiom 53 (ruleD9): fresh51(perp(X, Y, Z, W), true, V, U, X, Y, Z, W) = fresh50(perp(V, U, X, Y), true, V, U, Z, W).
% 12.42/2.02  Axiom 54 (ruleD39): fresh106(eqangle(X, Y, Z, W, V, U, Z, W), true, X, Y, V, U) = para(X, Y, V, U).
% 12.42/2.02  Axiom 55 (ruleD42b): fresh102(eqangle(X, Y, X, Z, W, Y, W, Z), true, Y, Z, X, W) = fresh101(coll(X, W, Z), true, Y, Z, X, W).
% 12.42/2.02  Axiom 56 (ruleD51): fresh178(eqangle(X, Y, X, Z, W, Y, W, V), true, X, Y, Z, V, W) = fresh89(circle(W, X, Y, Z), true, Y, Z, V).
% 12.42/2.02  Axiom 57 (ruleD43): fresh182(eqangle(X, Y, X, Z, W, V, W, U), true, Y, Z, X, V, U, W) = fresh184(cyclic(Y, Z, X, W), true, Y, Z, X, V, U).
% 12.42/2.02  Axiom 58 (ruleD19): fresh134(eqangle(X, Y, Z, W, V, U, T, S), true, X, Y, Z, W, V, U, T, S) = eqangle(Z, W, X, Y, T, S, V, U).
% 12.42/2.02  Axiom 59 (ruleD21): fresh131(eqangle(X, Y, Z, W, V, U, T, S), true, X, Y, Z, W, V, U, T, S) = eqangle(X, Y, V, U, Z, W, T, S).
% 12.42/2.02  
% 12.42/2.02  Lemma 60: eqangle(p, b, X, Y, p, b, X, Y) = true.
% 12.42/2.02  Proof:
% 12.42/2.02    eqangle(p, b, X, Y, p, b, X, Y)
% 12.42/2.02  = { by axiom 52 (ruleD40) R->L }
% 12.42/2.02    fresh104(para(p, b, p, b), true, p, b, p, b, X, Y)
% 12.42/2.02  = { by axiom 36 (ruleD9) R->L }
% 12.42/2.02    fresh104(fresh51(true, true, p, b, p, a, p, b), true, p, b, p, b, X, Y)
% 12.42/2.02  = { by axiom 2 (exemplo6GDDFULL618068_3) R->L }
% 12.42/2.02    fresh104(fresh51(perp(p, a, p, b), true, p, b, p, a, p, b), true, p, b, p, b, X, Y)
% 12.42/2.02  = { by axiom 53 (ruleD9) }
% 12.42/2.02    fresh104(fresh50(perp(p, b, p, a), true, p, b, p, b), true, p, b, p, b, X, Y)
% 12.42/2.02  = { by axiom 48 (ruleD8) R->L }
% 12.42/2.02    fresh104(fresh50(fresh52(perp(p, a, p, b), true, p, a, p, b), true, p, b, p, b), true, p, b, p, b, X, Y)
% 12.42/2.02  = { by axiom 2 (exemplo6GDDFULL618068_3) }
% 12.42/2.02    fresh104(fresh50(fresh52(true, true, p, a, p, b), true, p, b, p, b), true, p, b, p, b, X, Y)
% 12.42/2.02  = { by axiom 25 (ruleD8) }
% 12.42/2.02    fresh104(fresh50(true, true, p, b, p, b), true, p, b, p, b, X, Y)
% 12.42/2.02  = { by axiom 26 (ruleD9) }
% 12.42/2.02    fresh104(true, true, p, b, p, b, X, Y)
% 12.42/2.02  = { by axiom 34 (ruleD40) }
% 12.42/2.02    true
% 12.42/2.02  
% 12.42/2.02  Lemma 61: para(X, Y, X, Y) = true.
% 12.42/2.02  Proof:
% 12.42/2.02    para(X, Y, X, Y)
% 12.42/2.02  = { by axiom 54 (ruleD39) R->L }
% 12.42/2.02    fresh106(eqangle(X, Y, p, b, X, Y, p, b), true, X, Y, X, Y)
% 12.42/2.02  = { by axiom 58 (ruleD19) R->L }
% 12.42/2.02    fresh106(fresh134(eqangle(p, b, X, Y, p, b, X, Y), true, p, b, X, Y, p, b, X, Y), true, X, Y, X, Y)
% 12.42/2.02  = { by lemma 60 }
% 12.42/2.02    fresh106(fresh134(true, true, p, b, X, Y, p, b, X, Y), true, X, Y, X, Y)
% 12.42/2.02  = { by axiom 42 (ruleD19) }
% 12.42/2.02    fresh106(true, true, X, Y, X, Y)
% 12.42/2.02  = { by axiom 17 (ruleD39) }
% 12.42/2.02    true
% 12.42/2.02  
% 12.42/2.02  Lemma 62: coll(X, X, Y) = true.
% 12.42/2.02  Proof:
% 12.42/2.02    coll(X, X, Y)
% 12.42/2.02  = { by axiom 32 (ruleD1) R->L }
% 12.42/2.02    fresh146(coll(X, Y, X), true, X, Y, X)
% 12.42/2.02  = { by axiom 33 (ruleD2) R->L }
% 12.42/2.02    fresh146(fresh133(coll(Y, X, X), true, Y, X, X), true, X, Y, X)
% 12.42/2.02  = { by axiom 39 (ruleD66) R->L }
% 12.42/2.02    fresh146(fresh133(fresh66(para(Y, X, Y, X), true, Y, X, X), true, Y, X, X), true, X, Y, X)
% 12.42/2.02  = { by lemma 61 }
% 12.42/2.02    fresh146(fresh133(fresh66(true, true, Y, X, X), true, Y, X, X), true, X, Y, X)
% 12.42/2.02  = { by axiom 11 (ruleD66) }
% 12.42/2.02    fresh146(fresh133(true, true, Y, X, X), true, X, Y, X)
% 12.42/2.02  = { by axiom 7 (ruleD2) }
% 12.42/2.02    fresh146(true, true, X, Y, X)
% 12.42/2.02  = { by axiom 6 (ruleD1) }
% 12.42/2.02    true
% 12.42/2.02  
% 12.42/2.02  Lemma 63: coll(X, Y, Z) = true.
% 12.42/2.02  Proof:
% 12.42/2.02    coll(X, Y, Z)
% 12.42/2.02  = { by axiom 16 (ruleD3) R->L }
% 12.42/2.02    fresh120(true, true, Z, Z, X, Y)
% 12.42/2.02  = { by lemma 62 R->L }
% 12.42/2.02    fresh120(coll(Z, Z, Y), true, Z, Z, X, Y)
% 12.42/2.02  = { by axiom 38 (ruleD3) }
% 12.42/2.02    fresh119(coll(Z, Z, X), true, Z, X, Y)
% 12.42/2.02  = { by lemma 62 }
% 12.42/2.02    fresh119(true, true, Z, X, Y)
% 12.42/2.02  = { by axiom 8 (ruleD3) }
% 12.42/2.02    true
% 12.42/2.02  
% 12.42/2.02  Lemma 64: cyclic(b, b, p, X) = true.
% 12.42/2.02  Proof:
% 12.42/2.02    cyclic(b, b, p, X)
% 12.42/2.02  = { by axiom 19 (ruleD42b) R->L }
% 12.42/2.02    fresh102(true, true, b, b, p, X)
% 12.42/2.02  = { by axiom 43 (ruleD21) R->L }
% 12.42/2.02    fresh102(fresh131(true, true, p, b, X, b, p, b, X, b), true, b, b, p, X)
% 12.42/2.02  = { by lemma 60 R->L }
% 12.42/2.02    fresh102(fresh131(eqangle(p, b, X, b, p, b, X, b), true, p, b, X, b, p, b, X, b), true, b, b, p, X)
% 12.42/2.02  = { by axiom 59 (ruleD21) }
% 12.42/2.02    fresh102(eqangle(p, b, p, b, X, b, X, b), true, b, b, p, X)
% 12.42/2.02  = { by axiom 55 (ruleD42b) }
% 12.42/2.02    fresh101(coll(p, X, b), true, b, b, p, X)
% 12.42/2.02  = { by lemma 63 }
% 12.42/2.02    fresh101(true, true, b, b, p, X)
% 12.42/2.02  = { by axiom 20 (ruleD42b) }
% 12.42/2.02    true
% 12.42/2.02  
% 12.42/2.02  Lemma 65: cyclic(b, p, X, Y) = true.
% 12.42/2.02  Proof:
% 12.42/2.02    cyclic(b, p, X, Y)
% 12.42/2.02  = { by axiom 28 (ruleD17) R->L }
% 12.42/2.02    fresh137(true, true, b, b, p, X, Y)
% 12.42/2.02  = { by lemma 64 R->L }
% 12.42/2.02    fresh137(cyclic(b, b, p, Y), true, b, b, p, X, Y)
% 12.42/2.02  = { by axiom 50 (ruleD17) }
% 12.42/2.02    fresh136(cyclic(b, b, p, X), true, b, p, X, Y)
% 12.42/2.02  = { by lemma 64 }
% 12.42/2.02    fresh136(true, true, b, p, X, Y)
% 12.42/2.02  = { by axiom 15 (ruleD17) }
% 12.42/2.02    true
% 12.42/2.02  
% 12.42/2.02  Lemma 66: cyclic(p, X, Y, Z) = true.
% 12.42/2.02  Proof:
% 12.42/2.03    cyclic(p, X, Y, Z)
% 12.42/2.03  = { by axiom 28 (ruleD17) R->L }
% 12.42/2.03    fresh137(true, true, b, p, X, Y, Z)
% 12.42/2.03  = { by lemma 65 R->L }
% 12.42/2.03    fresh137(cyclic(b, p, X, Z), true, b, p, X, Y, Z)
% 12.42/2.03  = { by axiom 50 (ruleD17) }
% 12.42/2.03    fresh136(cyclic(b, p, X, Y), true, p, X, Y, Z)
% 12.42/2.03  = { by lemma 65 }
% 12.42/2.03    fresh136(true, true, p, X, Y, Z)
% 12.42/2.03  = { by axiom 15 (ruleD17) }
% 12.42/2.03    true
% 12.42/2.03  
% 12.42/2.03  Lemma 67: cyclic(X, Y, Z, W) = true.
% 12.42/2.03  Proof:
% 12.42/2.03    cyclic(X, Y, Z, W)
% 12.42/2.03  = { by axiom 28 (ruleD17) R->L }
% 12.42/2.03    fresh137(true, true, p, X, Y, Z, W)
% 12.42/2.03  = { by lemma 66 R->L }
% 12.42/2.03    fresh137(cyclic(p, X, Y, W), true, p, X, Y, Z, W)
% 12.42/2.03  = { by axiom 50 (ruleD17) }
% 12.42/2.03    fresh136(cyclic(p, X, Y, Z), true, X, Y, Z, W)
% 12.42/2.03  = { by lemma 66 }
% 12.42/2.03    fresh136(true, true, X, Y, Z, W)
% 12.42/2.03  = { by axiom 15 (ruleD17) }
% 12.42/2.03    true
% 12.42/2.03  
% 12.42/2.03  Lemma 68: cong(X, Y, X, Y) = true.
% 12.42/2.03  Proof:
% 12.42/2.03    cong(X, Y, X, Y)
% 12.42/2.03  = { by axiom 27 (ruleD43) R->L }
% 12.42/2.03    fresh183(true, true, X, Y, Z, X, Y)
% 12.42/2.03  = { by lemma 67 R->L }
% 12.42/2.03    fresh183(cyclic(X, Y, Z, Y), true, X, Y, Z, X, Y)
% 12.42/2.03  = { by axiom 49 (ruleD43) R->L }
% 12.42/2.03    fresh182(true, true, X, Y, Z, X, Y, Z)
% 12.42/2.03  = { by axiom 34 (ruleD40) R->L }
% 12.42/2.03    fresh182(fresh104(true, true, Z, X, Z, X, Z, Y), true, X, Y, Z, X, Y, Z)
% 12.42/2.03  = { by lemma 61 R->L }
% 12.42/2.03    fresh182(fresh104(para(Z, X, Z, X), true, Z, X, Z, X, Z, Y), true, X, Y, Z, X, Y, Z)
% 12.42/2.03  = { by axiom 52 (ruleD40) }
% 12.42/2.03    fresh182(eqangle(Z, X, Z, Y, Z, X, Z, Y), true, X, Y, Z, X, Y, Z)
% 12.42/2.03  = { by axiom 57 (ruleD43) }
% 12.42/2.03    fresh184(cyclic(X, Y, Z, Z), true, X, Y, Z, X, Y)
% 12.42/2.03  = { by lemma 67 }
% 12.42/2.03    fresh184(true, true, X, Y, Z, X, Y)
% 12.42/2.03  = { by axiom 40 (ruleD43) }
% 12.42/2.03    fresh185(cyclic(X, Y, Z, X), true, X, Y, X, Y)
% 12.42/2.03  = { by lemma 67 }
% 12.42/2.03    fresh185(true, true, X, Y, X, Y)
% 12.42/2.03  = { by axiom 13 (ruleD43) }
% 12.42/2.03    true
% 12.42/2.03  
% 12.42/2.03  Lemma 69: perp(X, X, Y, Z) = true.
% 12.42/2.03  Proof:
% 12.42/2.03    perp(X, X, Y, Z)
% 12.42/2.03  = { by axiom 21 (ruleD56) R->L }
% 12.42/2.03    fresh80(true, true, X, X, Y, Z)
% 12.42/2.03  = { by lemma 68 R->L }
% 12.42/2.03    fresh80(cong(X, Z, X, Z), true, X, X, Y, Z)
% 12.42/2.03  = { by axiom 45 (ruleD56) }
% 12.42/2.03    fresh79(cong(X, Y, X, Y), true, X, X, Y, Z)
% 12.42/2.03  = { by lemma 68 }
% 12.42/2.03    fresh79(true, true, X, X, Y, Z)
% 12.42/2.03  = { by axiom 22 (ruleD56) }
% 12.42/2.03    true
% 12.42/2.03  
% 12.42/2.03  Lemma 70: para(X, Y, Z, W) = true.
% 12.42/2.03  Proof:
% 12.42/2.03    para(X, Y, Z, W)
% 12.42/2.03  = { by axiom 36 (ruleD9) R->L }
% 12.42/2.03    fresh51(true, true, X, Y, V, V, Z, W)
% 12.42/2.03  = { by lemma 69 R->L }
% 12.42/2.03    fresh51(perp(V, V, Z, W), true, X, Y, V, V, Z, W)
% 12.42/2.03  = { by axiom 53 (ruleD9) }
% 12.42/2.03    fresh50(perp(X, Y, V, V), true, X, Y, Z, W)
% 12.42/2.03  = { by axiom 48 (ruleD8) R->L }
% 12.42/2.03    fresh50(fresh52(perp(V, V, X, Y), true, V, V, X, Y), true, X, Y, Z, W)
% 12.42/2.03  = { by lemma 69 }
% 12.42/2.03    fresh50(fresh52(true, true, V, V, X, Y), true, X, Y, Z, W)
% 12.42/2.03  = { by axiom 25 (ruleD8) }
% 12.42/2.03    fresh50(true, true, X, Y, Z, W)
% 12.42/2.03  = { by axiom 26 (ruleD9) }
% 12.42/2.03    true
% 12.42/2.03  
% 12.42/2.03  Goal 1 (exemplo6GDDFULL618068_12): perp(g, f, d, e) = true.
% 12.42/2.03  Proof:
% 12.42/2.03    perp(g, f, d, e)
% 12.42/2.03  = { by axiom 31 (ruleD10) R->L }
% 12.42/2.03    fresh147(true, true, g, f, g, e, d, e)
% 12.42/2.03  = { by axiom 25 (ruleD8) R->L }
% 12.42/2.03    fresh147(fresh52(true, true, d, e, g, e), true, g, f, g, e, d, e)
% 12.42/2.03  = { by axiom 24 (ruleD7) R->L }
% 12.42/2.03    fresh147(fresh52(fresh61(true, true, d, e, e, g), true, d, e, g, e), true, g, f, g, e, d, e)
% 12.42/2.03  = { by axiom 5 (ruleD57) R->L }
% 12.42/2.03    fresh147(fresh52(fresh61(fresh177(true, true, e, d, g), true, d, e, e, g), true, d, e, g, e), true, g, f, g, e, d, e)
% 12.42/2.03  = { by lemma 68 R->L }
% 12.42/2.03    fresh147(fresh52(fresh61(fresh177(cong(e, d, e, d), true, e, d, g), true, d, e, e, g), true, d, e, g, e), true, g, f, g, e, d, e)
% 12.42/2.03  = { by axiom 37 (ruleD57) R->L }
% 12.42/2.03    fresh147(fresh52(fresh61(fresh176(true, true, e, e, d, g), true, d, e, e, g), true, d, e, g, e), true, g, f, g, e, d, e)
% 12.42/2.03  = { by lemma 67 R->L }
% 12.42/2.03    fresh147(fresh52(fresh61(fresh176(cyclic(e, e, d, g), true, e, e, d, g), true, d, e, e, g), true, d, e, g, e), true, g, f, g, e, d, e)
% 12.42/2.03  = { by axiom 46 (ruleD57) }
% 13.09/2.03    fresh147(fresh52(fresh61(fresh78(cong(e, g, e, g), true, e, e, d, g), true, d, e, e, g), true, d, e, g, e), true, g, f, g, e, d, e)
% 13.09/2.03  = { by axiom 35 (ruleD68) R->L }
% 13.09/2.03    fresh147(fresh52(fresh61(fresh78(fresh63(midp(e, g, g), true, e, g, g), true, e, e, d, g), true, d, e, e, g), true, d, e, g, e), true, g, f, g, e, d, e)
% 13.09/2.03  = { by axiom 9 (ruleD45) R->L }
% 13.09/2.03    fresh147(fresh52(fresh61(fresh78(fresh63(fresh98(true, true, g, g, e), true, e, g, g), true, e, e, d, g), true, d, e, e, g), true, d, e, g, e), true, g, f, g, e, d, e)
% 13.09/2.03  = { by lemma 70 R->L }
% 13.09/2.03    fresh147(fresh52(fresh61(fresh78(fresh63(fresh98(para(nwpnt01, e, nwpnt01, g), true, g, g, e), true, e, g, g), true, e, e, d, g), true, d, e, e, g), true, d, e, g, e), true, g, f, g, e, d, e)
% 13.09/2.03  = { by axiom 41 (ruleD45) R->L }
% 13.09/2.03    fresh147(fresh52(fresh61(fresh78(fresh63(fresh180(midp(nwpnt01, g, nwpnt01), true, g, nwpnt01, g, nwpnt01, e), true, e, g, g), true, e, e, d, g), true, d, e, e, g), true, d, e, g, e), true, g, f, g, e, d, e)
% 13.09/2.03  = { by axiom 10 (ruleD51) R->L }
% 13.09/2.03    fresh147(fresh52(fresh61(fresh78(fresh63(fresh180(fresh89(true, true, g, nwpnt01, nwpnt01), true, g, nwpnt01, g, nwpnt01, e), true, e, g, g), true, e, e, d, g), true, d, e, e, g), true, d, e, g, e), true, g, f, g, e, d, e)
% 13.09/2.03  = { by axiom 1 (exemplo6GDDFULL618068_7) R->L }
% 13.09/2.03    fresh147(fresh52(fresh61(fresh78(fresh63(fresh180(fresh89(circle(b, f, g, nwpnt01), true, g, nwpnt01, nwpnt01), true, g, nwpnt01, g, nwpnt01, e), true, e, g, g), true, e, e, d, g), true, d, e, e, g), true, d, e, g, e), true, g, f, g, e, d, e)
% 13.09/2.03  = { by axiom 56 (ruleD51) R->L }
% 13.09/2.03    fresh147(fresh52(fresh61(fresh78(fresh63(fresh180(fresh178(eqangle(f, g, f, nwpnt01, b, g, b, nwpnt01), true, f, g, nwpnt01, nwpnt01, b), true, g, nwpnt01, g, nwpnt01, e), true, e, g, g), true, e, e, d, g), true, d, e, e, g), true, d, e, g, e), true, g, f, g, e, d, e)
% 13.09/2.03  = { by axiom 44 (ruleD41) R->L }
% 13.09/2.03    fresh147(fresh52(fresh61(fresh78(fresh63(fresh180(fresh178(fresh103(cyclic(g, nwpnt01, f, b), true, g, nwpnt01, f, b), true, f, g, nwpnt01, nwpnt01, b), true, g, nwpnt01, g, nwpnt01, e), true, e, g, g), true, e, e, d, g), true, d, e, e, g), true, d, e, g, e), true, g, f, g, e, d, e)
% 13.09/2.03  = { by lemma 67 }
% 13.09/2.03    fresh147(fresh52(fresh61(fresh78(fresh63(fresh180(fresh178(fresh103(true, true, g, nwpnt01, f, b), true, f, g, nwpnt01, nwpnt01, b), true, g, nwpnt01, g, nwpnt01, e), true, e, g, g), true, e, e, d, g), true, d, e, e, g), true, d, e, g, e), true, g, f, g, e, d, e)
% 13.09/2.03  = { by axiom 18 (ruleD41) }
% 13.09/2.03    fresh147(fresh52(fresh61(fresh78(fresh63(fresh180(fresh178(true, true, f, g, nwpnt01, nwpnt01, b), true, g, nwpnt01, g, nwpnt01, e), true, e, g, g), true, e, e, d, g), true, d, e, e, g), true, d, e, g, e), true, g, f, g, e, d, e)
% 13.09/2.03  = { by axiom 30 (ruleD51) }
% 13.09/2.03    fresh147(fresh52(fresh61(fresh78(fresh63(fresh180(fresh179(coll(nwpnt01, g, nwpnt01), true, g, nwpnt01, nwpnt01), true, g, nwpnt01, g, nwpnt01, e), true, e, g, g), true, e, e, d, g), true, d, e, e, g), true, d, e, g, e), true, g, f, g, e, d, e)
% 13.09/2.03  = { by lemma 63 }
% 13.09/2.03    fresh147(fresh52(fresh61(fresh78(fresh63(fresh180(fresh179(true, true, g, nwpnt01, nwpnt01), true, g, nwpnt01, g, nwpnt01, e), true, e, g, g), true, e, e, d, g), true, d, e, e, g), true, d, e, g, e), true, g, f, g, e, d, e)
% 13.09/2.03  = { by axiom 4 (ruleD51) }
% 13.09/2.03    fresh147(fresh52(fresh61(fresh78(fresh63(fresh180(true, true, g, nwpnt01, g, nwpnt01, e), true, e, g, g), true, e, e, d, g), true, d, e, e, g), true, d, e, g, e), true, g, f, g, e, d, e)
% 13.09/2.03  = { by axiom 29 (ruleD45) }
% 13.09/2.03    fresh147(fresh52(fresh61(fresh78(fresh63(fresh181(coll(e, g, g), true, g, g, e), true, e, g, g), true, e, e, d, g), true, d, e, e, g), true, d, e, g, e), true, g, f, g, e, d, e)
% 13.09/2.03  = { by lemma 63 }
% 13.09/2.03    fresh147(fresh52(fresh61(fresh78(fresh63(fresh181(true, true, g, g, e), true, e, g, g), true, e, e, d, g), true, d, e, e, g), true, d, e, g, e), true, g, f, g, e, d, e)
% 13.09/2.03  = { by axiom 3 (ruleD45) }
% 13.09/2.03    fresh147(fresh52(fresh61(fresh78(fresh63(true, true, e, g, g), true, e, e, d, g), true, d, e, e, g), true, d, e, g, e), true, g, f, g, e, d, e)
% 13.09/2.03  = { by axiom 12 (ruleD68) }
% 13.09/2.03    fresh147(fresh52(fresh61(fresh78(true, true, e, e, d, g), true, d, e, e, g), true, d, e, g, e), true, g, f, g, e, d, e)
% 13.09/2.03  = { by axiom 23 (ruleD57) }
% 13.09/2.03    fresh147(fresh52(fresh61(perp(d, e, e, g), true, d, e, e, g), true, d, e, g, e), true, g, f, g, e, d, e)
% 13.09/2.03  = { by axiom 47 (ruleD7) }
% 13.09/2.03    fresh147(fresh52(perp(d, e, g, e), true, d, e, g, e), true, g, f, g, e, d, e)
% 13.09/2.03  = { by axiom 48 (ruleD8) }
% 13.09/2.03    fresh147(perp(g, e, d, e), true, g, f, g, e, d, e)
% 13.09/2.03  = { by axiom 51 (ruleD10) }
% 13.09/2.03    fresh145(para(g, f, g, e), true, g, f, d, e)
% 13.09/2.03  = { by lemma 70 }
% 13.09/2.03    fresh145(true, true, g, f, d, e)
% 13.09/2.03  = { by axiom 14 (ruleD10) }
% 13.09/2.03    true
% 13.09/2.03  % SZS output end Proof
% 13.09/2.03  
% 13.09/2.03  RESULT: Theorem (the conjecture is true).
%------------------------------------------------------------------------------